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<a href="#pub-methods">Public Member Functions</a> &#124;
<a href="#pub-static-methods">Static Public Member Functions</a> &#124;
<a href="#pri-methods">Private Member Functions</a> &#124;
<a href="#pri-attribs">Private Attributes</a> &#124;
<a href="classIpopt_1_1InexactPDSolver-members.html">List of all members</a>  </div>
  <div class="headertitle"><div class="title">Ipopt::InexactPDSolver Class Reference</div></div>
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<p>This is the implementation of the Primal-Dual System, allowing the usage of an inexact linear solver.  
 <a href="classIpopt_1_1InexactPDSolver.html#details">More...</a></p>

<p><code>#include &lt;<a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>&gt;</code></p>
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  <img id="dynsection-0-trigger" src="closed.png" alt="+"/> Inheritance diagram for Ipopt::InexactPDSolver:</div>
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<map name="aIpopt_1_1InexactPDSolver_inherit__map" id="aIpopt_1_1InexactPDSolver_inherit__map">
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<center><span class="legend">[<a target="top" href="graph_legend.html">legend</a>]</span></center></div>
<table class="memberdecls">
<tr class="heading"><td colspan="2"><h2 class="groupheader"><a id="pub-methods" name="pub-methods"></a>
Public Member Functions</h2></td></tr>
<tr class="memitem:aab927b8bd5688eee5c4780e38f706279" id="r_aab927b8bd5688eee5c4780e38f706279"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">bool</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#aab927b8bd5688eee5c4780e38f706279">InitializeImpl</a> (<a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1OptionsList.html">OptionsList</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">options</a>, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> std::string &amp;<a class="el" href="classIpopt_1_1DependentResult.html">prefix</a>)</td></tr>
<tr class="memdesc:aab927b8bd5688eee5c4780e38f706279"><td class="mdescLeft">&#160;</td><td class="mdescRight">Implementation of the initialization method that has to be overloaded by for each derived class.  <br /></td></tr>
<tr class="separator:aab927b8bd5688eee5c4780e38f706279"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:add4de668e7e7d8917f81ba92252e3134" id="r_add4de668e7e7d8917f81ba92252e3134"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">virtual</a> <a class="el" href="classIpopt_1_1DependentResult.html">bool</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#add4de668e7e7d8917f81ba92252e3134">Solve</a> (<a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1IteratesVector.html">IteratesVector</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">rhs</a>, <a class="el" href="classIpopt_1_1IteratesVector.html">IteratesVector</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">sol</a>)</td></tr>
<tr class="memdesc:add4de668e7e7d8917f81ba92252e3134"><td class="mdescLeft">&#160;</td><td class="mdescRight">Solve the primal dual system, given one right hand side.  <br /></td></tr>
<tr class="separator:add4de668e7e7d8917f81ba92252e3134"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr><td colspan="2"><div class="groupHeader">Constructor/Destructor</div></td></tr>
<tr class="memitem:a980c16e3eb901a74a0f7411bf96881c1" id="r_a980c16e3eb901a74a0f7411bf96881c1"><td class="memItemLeft" align="right" valign="top">&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#a980c16e3eb901a74a0f7411bf96881c1">InexactPDSolver</a> (<a class="el" href="classIpopt_1_1AugSystemSolver.html">AugSystemSolver</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">augSysSolver</a>, <a class="el" href="classIpopt_1_1PDPerturbationHandler.html">PDPerturbationHandler</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">perturbHandler</a>)</td></tr>
<tr class="memdesc:a980c16e3eb901a74a0f7411bf96881c1"><td class="mdescLeft">&#160;</td><td class="mdescRight">Constructor that takes in the Augmented System solver that is to be used inside.  <br /></td></tr>
<tr class="separator:a980c16e3eb901a74a0f7411bf96881c1"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a753c130bc904eac4c4b4eefcefd83a93" id="r_a753c130bc904eac4c4b4eefcefd83a93"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">virtual</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#a753c130bc904eac4c4b4eefcefd83a93">~InexactPDSolver</a> ()</td></tr>
<tr class="memdesc:a753c130bc904eac4c4b4eefcefd83a93"><td class="mdescLeft">&#160;</td><td class="mdescRight">Destructor.  <br /></td></tr>
<tr class="separator:a753c130bc904eac4c4b4eefcefd83a93"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="inherit_header pub_methods_classIpopt_1_1AlgorithmStrategyObject"><td colspan="2" onclick="javascript:toggleInherit('pub_methods_classIpopt_1_1AlgorithmStrategyObject')"><img src="closed.png" alt="-"/>&#160;Public Member Functions inherited from <a class="el" href="classIpopt_1_1AlgorithmStrategyObject.html">Ipopt::AlgorithmStrategyObject</a></td></tr>
<tr class="memitem:aa2cb1ac4ea5b97c9283bc0fdb71da1d1 inherit pub_methods_classIpopt_1_1AlgorithmStrategyObject" id="r_aa2cb1ac4ea5b97c9283bc0fdb71da1d1"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">bool</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1AlgorithmStrategyObject.html#aa2cb1ac4ea5b97c9283bc0fdb71da1d1">Initialize</a> (<a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Journalist.html">Journalist</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">jnlst</a>, <a class="el" href="classIpopt_1_1IpoptNLP.html">IpoptNLP</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">ip_nlp</a>, <a class="el" href="classIpopt_1_1IpoptData.html">IpoptData</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">ip_data</a>, <a class="el" href="classIpopt_1_1IpoptCalculatedQuantities.html">IpoptCalculatedQuantities</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">ip_cq</a>, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1OptionsList.html">OptionsList</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">options</a>, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> std::string &amp;<a class="el" href="classIpopt_1_1DependentResult.html">prefix</a>)</td></tr>
<tr class="memdesc:aa2cb1ac4ea5b97c9283bc0fdb71da1d1 inherit pub_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="mdescLeft">&#160;</td><td class="mdescRight">This method is called every time the algorithm starts again - it is used to reset any internal state.  <br /></td></tr>
<tr class="separator:aa2cb1ac4ea5b97c9283bc0fdb71da1d1 inherit pub_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ac624e5a883f5c655cb0abbaa24eafcf9 inherit pub_methods_classIpopt_1_1AlgorithmStrategyObject" id="r_ac624e5a883f5c655cb0abbaa24eafcf9"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">bool</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1AlgorithmStrategyObject.html#ac624e5a883f5c655cb0abbaa24eafcf9">ReducedInitialize</a> (<a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Journalist.html">Journalist</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">jnlst</a>, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1OptionsList.html">OptionsList</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">options</a>, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> std::string &amp;<a class="el" href="classIpopt_1_1DependentResult.html">prefix</a>)</td></tr>
<tr class="memdesc:ac624e5a883f5c655cb0abbaa24eafcf9 inherit pub_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="mdescLeft">&#160;</td><td class="mdescRight">Reduced version of the Initialize method, which does not require special <a class="el" href="namespaceIpopt.html" title="This file contains a base class for all exceptions and a set of macros to help with exceptions.">Ipopt</a> information.  <br /></td></tr>
<tr class="separator:ac624e5a883f5c655cb0abbaa24eafcf9 inherit pub_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:af2d972f86eec83a96682bd6741a1d265 inherit pub_methods_classIpopt_1_1AlgorithmStrategyObject" id="r_af2d972f86eec83a96682bd6741a1d265"><td class="memItemLeft" align="right" valign="top">&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1AlgorithmStrategyObject.html#af2d972f86eec83a96682bd6741a1d265">AlgorithmStrategyObject</a> ()</td></tr>
<tr class="memdesc:af2d972f86eec83a96682bd6741a1d265 inherit pub_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="mdescLeft">&#160;</td><td class="mdescRight">Default Constructor.  <br /></td></tr>
<tr class="separator:af2d972f86eec83a96682bd6741a1d265 inherit pub_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:aea25a150f7488885653c082eca5dab45 inherit pub_methods_classIpopt_1_1AlgorithmStrategyObject" id="r_aea25a150f7488885653c082eca5dab45"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">virtual</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1AlgorithmStrategyObject.html#aea25a150f7488885653c082eca5dab45">~AlgorithmStrategyObject</a> ()</td></tr>
<tr class="memdesc:aea25a150f7488885653c082eca5dab45 inherit pub_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="mdescLeft">&#160;</td><td class="mdescRight">Destructor.  <br /></td></tr>
<tr class="separator:aea25a150f7488885653c082eca5dab45 inherit pub_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="inherit_header pub_methods_classIpopt_1_1ReferencedObject"><td colspan="2" onclick="javascript:toggleInherit('pub_methods_classIpopt_1_1ReferencedObject')"><img src="closed.png" alt="-"/>&#160;Public Member Functions inherited from <a class="el" href="classIpopt_1_1ReferencedObject.html">Ipopt::ReferencedObject</a></td></tr>
<tr class="memitem:a5c0f2208e3ead22bf7c5179381ed8203 inherit pub_methods_classIpopt_1_1ReferencedObject" id="r_a5c0f2208e3ead22bf7c5179381ed8203"><td class="memItemLeft" align="right" valign="top">&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1ReferencedObject.html#a5c0f2208e3ead22bf7c5179381ed8203">ReferencedObject</a> ()</td></tr>
<tr class="separator:a5c0f2208e3ead22bf7c5179381ed8203 inherit pub_methods_classIpopt_1_1ReferencedObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:adbbf3aa5307da62ab8224ba599d4bd7a inherit pub_methods_classIpopt_1_1ReferencedObject" id="r_adbbf3aa5307da62ab8224ba599d4bd7a"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">virtual</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1ReferencedObject.html#adbbf3aa5307da62ab8224ba599d4bd7a">~ReferencedObject</a> ()</td></tr>
<tr class="separator:adbbf3aa5307da62ab8224ba599d4bd7a inherit pub_methods_classIpopt_1_1ReferencedObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:aac517534e10e36c946aeefc6fe337777 inherit pub_methods_classIpopt_1_1ReferencedObject" id="r_aac517534e10e36c946aeefc6fe337777"><td class="memItemLeft" align="right" valign="top"><a class="el" href="namespaceIpopt.html#a5a4a27f325033a0e5d85a4ebc4038b57">Index</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1ReferencedObject.html#aac517534e10e36c946aeefc6fe337777">ReferenceCount</a> () <a class="el" href="classIpopt_1_1DependentResult.html">const</a></td></tr>
<tr class="separator:aac517534e10e36c946aeefc6fe337777 inherit pub_methods_classIpopt_1_1ReferencedObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:aa69ecb0f026bd741e2fa84c31d4ec332 inherit pub_methods_classIpopt_1_1ReferencedObject" id="r_aa69ecb0f026bd741e2fa84c31d4ec332"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">void</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1ReferencedObject.html#aa69ecb0f026bd741e2fa84c31d4ec332">AddRef</a> (<a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Referencer.html">Referencer</a> *<a class="el" href="classIpopt_1_1DependentResult.html">referencer</a>) <a class="el" href="classIpopt_1_1DependentResult.html">const</a></td></tr>
<tr class="separator:aa69ecb0f026bd741e2fa84c31d4ec332 inherit pub_methods_classIpopt_1_1ReferencedObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ae6c952e7d1a63080dc8f121c008944fc inherit pub_methods_classIpopt_1_1ReferencedObject" id="r_ae6c952e7d1a63080dc8f121c008944fc"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">void</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1ReferencedObject.html#ae6c952e7d1a63080dc8f121c008944fc">ReleaseRef</a> (<a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Referencer.html">Referencer</a> *<a class="el" href="classIpopt_1_1DependentResult.html">referencer</a>) <a class="el" href="classIpopt_1_1DependentResult.html">const</a></td></tr>
<tr class="separator:ae6c952e7d1a63080dc8f121c008944fc inherit pub_methods_classIpopt_1_1ReferencedObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
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<tr class="heading"><td colspan="2"><h2 class="groupheader"><a id="pub-static-methods" name="pub-static-methods"></a>
Static Public Member Functions</h2></td></tr>
<tr class="memitem:a001f7c31ab64f3720b5aa930892507cf" id="r_a001f7c31ab64f3720b5aa930892507cf"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">static</a> <a class="el" href="classIpopt_1_1DependentResult.html">void</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#a001f7c31ab64f3720b5aa930892507cf">RegisterOptions</a> (<a class="el" href="classIpopt_1_1SmartPtr.html">SmartPtr</a>&lt; <a class="el" href="classIpopt_1_1RegisteredOptions.html">RegisteredOptions</a> &gt; <a class="el" href="classIpopt_1_1DependentResult.html">roptions</a>)</td></tr>
<tr class="separator:a001f7c31ab64f3720b5aa930892507cf"><td class="memSeparator" colspan="2">&#160;</td></tr>
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<tr class="heading"><td colspan="2"><h2 class="groupheader"><a id="pri-methods" name="pri-methods"></a>
Private Member Functions</h2></td></tr>
<tr class="memitem:ae776113ed3edae4e50051e11fa0e78d1" id="r_ae776113ed3edae4e50051e11fa0e78d1"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1InexactData.html">InexactData</a> &amp;&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#ae776113ed3edae4e50051e11fa0e78d1">InexData</a> ()</td></tr>
<tr class="memdesc:ae776113ed3edae4e50051e11fa0e78d1"><td class="mdescLeft">&#160;</td><td class="mdescRight">Method to easily access Inexact data.  <br /></td></tr>
<tr class="separator:ae776113ed3edae4e50051e11fa0e78d1"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a5f93ac125f67b528f5664faf307408f7" id="r_a5f93ac125f67b528f5664faf307408f7"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1InexactCq.html">InexactCq</a> &amp;&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#a5f93ac125f67b528f5664faf307408f7">InexCq</a> ()</td></tr>
<tr class="memdesc:a5f93ac125f67b528f5664faf307408f7"><td class="mdescLeft">&#160;</td><td class="mdescRight">Method to easily access Inexact calculated quantities.  <br /></td></tr>
<tr class="separator:a5f93ac125f67b528f5664faf307408f7"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a892f92d55ad6f51bdd2b8951541bbb47" id="r_a892f92d55ad6f51bdd2b8951541bbb47"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">void</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#a892f92d55ad6f51bdd2b8951541bbb47">ComputeResiduals</a> (<a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1SymMatrix.html">SymMatrix</a> &amp;W, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Matrix.html">Matrix</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">J_c</a>, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Matrix.html">Matrix</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">J_d</a>, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Matrix.html">Matrix</a> &amp;Pd_L, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Matrix.html">Matrix</a> &amp;Pd_U, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Vector.html">Vector</a> &amp;v_L, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Vector.html">Vector</a> &amp;v_U, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Vector.html">Vector</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">slack_s_L</a>, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Vector.html">Vector</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">slack_s_U</a>, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Vector.html">Vector</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">sigma_s</a>, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1IteratesVector.html">IteratesVector</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">rhs</a>, <a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1IteratesVector.html">IteratesVector</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">res</a>, <a class="el" href="classIpopt_1_1IteratesVector.html">IteratesVector</a> &amp;<a class="el" href="classIpopt_1_1DependentResult.html">resid</a>)</td></tr>
<tr class="memdesc:a892f92d55ad6f51bdd2b8951541bbb47"><td class="mdescLeft">&#160;</td><td class="mdescRight">Internal function for computing the residual (resid) given the right hand side (rhs) and the solution of the system (res).  <br /></td></tr>
<tr class="separator:a892f92d55ad6f51bdd2b8951541bbb47"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ac66db5a00432dd6b643e6e03f9a5b8d9" id="r_ac66db5a00432dd6b643e6e03f9a5b8d9"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">bool</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#ac66db5a00432dd6b643e6e03f9a5b8d9">HessianRequiresChange</a> ()</td></tr>
<tr class="memdesc:ac66db5a00432dd6b643e6e03f9a5b8d9"><td class="mdescLeft">&#160;</td><td class="mdescRight">Method for checking if the Hessian matrix has to be modified.  <br /></td></tr>
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<tr><td colspan="2"><div class="groupHeader">Default Compiler Generated Methods</div></td></tr>
<tr><td colspan="2"><div class="groupText"><p>(Hidden to avoid implicit creation/calling).</p>
<p>These methods are not implemented and we do not want the compiler to implement them for us, so we declare them private and do not define them. This ensures that they will not be implicitly created/called. </p>
</div></td></tr>
<tr class="memitem:a09d510d5044ecf3fe7765ea18843e522" id="r_a09d510d5044ecf3fe7765ea18843e522"><td class="memItemLeft" align="right" valign="top">&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#a09d510d5044ecf3fe7765ea18843e522">InexactPDSolver</a> ()</td></tr>
<tr class="memdesc:a09d510d5044ecf3fe7765ea18843e522"><td class="mdescLeft">&#160;</td><td class="mdescRight">Default Constructor.  <br /></td></tr>
<tr class="separator:a09d510d5044ecf3fe7765ea18843e522"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ac9a0f0aabf150129cb7aa0641880cba0" id="r_ac9a0f0aabf150129cb7aa0641880cba0"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1InexactPDSolver.html">InexactPDSolver</a> &amp;&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#ac9a0f0aabf150129cb7aa0641880cba0">operator=</a> (<a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1InexactPDSolver.html">InexactPDSolver</a> &amp;)</td></tr>
<tr class="memdesc:ac9a0f0aabf150129cb7aa0641880cba0"><td class="mdescLeft">&#160;</td><td class="mdescRight">Overloaded Assignment Operator.  <br /></td></tr>
<tr class="separator:ac9a0f0aabf150129cb7aa0641880cba0"><td class="memSeparator" colspan="2">&#160;</td></tr>
</table><table class="memberdecls">
<tr class="heading"><td colspan="2"><h2 class="groupheader"><a id="pri-attribs" name="pri-attribs"></a>
Private Attributes</h2></td></tr>
<tr class="memitem:a534a1a1bbd2f78dfbcec15fe642569c9" id="r_a534a1a1bbd2f78dfbcec15fe642569c9"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">bool</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#a534a1a1bbd2f78dfbcec15fe642569c9">is_pardiso_</a></td></tr>
<tr class="memdesc:a534a1a1bbd2f78dfbcec15fe642569c9"><td class="mdescLeft">&#160;</td><td class="mdescRight">flag indicating if we are dealing with the Pardiso solver (temporary)  <br /></td></tr>
<tr class="separator:a534a1a1bbd2f78dfbcec15fe642569c9"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:abb525f91b087700b6f1ae79ae92a6394" id="r_abb525f91b087700b6f1ae79ae92a6394"><td class="memItemLeft" align="right" valign="top"><a class="el" href="namespaceIpopt.html#a5a4a27f325033a0e5d85a4ebc4038b57">Index</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#abb525f91b087700b6f1ae79ae92a6394">last_info_ls_count_</a></td></tr>
<tr class="separator:abb525f91b087700b6f1ae79ae92a6394"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr><td colspan="2"><div class="groupHeader">Strategy objects to hold on to.</div></td></tr>
<tr class="memitem:a45c73cfd1e23d39956916c1fddcf1df0" id="r_a45c73cfd1e23d39956916c1fddcf1df0"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1SmartPtr.html">SmartPtr</a>&lt; <a class="el" href="classIpopt_1_1AugSystemSolver.html">AugSystemSolver</a> &gt;&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#a45c73cfd1e23d39956916c1fddcf1df0">augSysSolver_</a></td></tr>
<tr class="memdesc:a45c73cfd1e23d39956916c1fddcf1df0"><td class="mdescLeft">&#160;</td><td class="mdescRight">Pointer to the Solver for the augmented system.  <br /></td></tr>
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<tr class="memitem:a4bd60eed77eed18bbbe5298a0fe86954" id="r_a4bd60eed77eed18bbbe5298a0fe86954"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1SmartPtr.html">SmartPtr</a>&lt; <a class="el" href="classIpopt_1_1PDPerturbationHandler.html">PDPerturbationHandler</a> &gt;&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#a4bd60eed77eed18bbbe5298a0fe86954">perturbHandler_</a></td></tr>
<tr class="memdesc:a4bd60eed77eed18bbbe5298a0fe86954"><td class="mdescLeft">&#160;</td><td class="mdescRight">Pointer to the Perturbation Handler.  <br /></td></tr>
<tr class="separator:a4bd60eed77eed18bbbe5298a0fe86954"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr><td colspan="2"><div class="groupHeader">Algorithmic options</div></td></tr>
<tr class="memitem:a5714f058980c834fbe690a0d557b09fe" id="r_a5714f058980c834fbe690a0d557b09fe"><td class="memItemLeft" align="right" valign="top"><a class="el" href="namespaceIpopt.html#ab75ce5f2ad60aa86e4dff723998e653f">Number</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#a5714f058980c834fbe690a0d557b09fe">tcc_psi_</a></td></tr>
<tr class="memdesc:a5714f058980c834fbe690a0d557b09fe"><td class="mdescLeft">&#160;</td><td class="mdescRight">Psi factor in the tangential component condition.  <br /></td></tr>
<tr class="separator:a5714f058980c834fbe690a0d557b09fe"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:ac422d2cca798c88ce1760c68f6fb1987" id="r_ac422d2cca798c88ce1760c68f6fb1987"><td class="memItemLeft" align="right" valign="top"><a class="el" href="namespaceIpopt.html#ab75ce5f2ad60aa86e4dff723998e653f">Number</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#ac422d2cca798c88ce1760c68f6fb1987">tcc_theta_</a></td></tr>
<tr class="memdesc:ac422d2cca798c88ce1760c68f6fb1987"><td class="mdescLeft">&#160;</td><td class="mdescRight">theta factor in the tangential component condition  <br /></td></tr>
<tr class="separator:ac422d2cca798c88ce1760c68f6fb1987"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:af1fd55adee5028bd81b15de7f921c38c" id="r_af1fd55adee5028bd81b15de7f921c38c"><td class="memItemLeft" align="right" valign="top"><a class="el" href="namespaceIpopt.html#ab75ce5f2ad60aa86e4dff723998e653f">Number</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#af1fd55adee5028bd81b15de7f921c38c">tcc_theta_mu_exponent_</a></td></tr>
<tr class="memdesc:af1fd55adee5028bd81b15de7f921c38c"><td class="mdescLeft">&#160;</td><td class="mdescRight">mu exponent when multiplied to theta in the tangential component condition  <br /></td></tr>
<tr class="separator:af1fd55adee5028bd81b15de7f921c38c"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a92c4364459781d9342cbf716f3d6a6ea" id="r_a92c4364459781d9342cbf716f3d6a6ea"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">bool</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#a92c4364459781d9342cbf716f3d6a6ea">modify_hessian_with_slacks_</a></td></tr>
<tr class="memdesc:a92c4364459781d9342cbf716f3d6a6ea"><td class="mdescLeft">&#160;</td><td class="mdescRight">flag indicating if the Hessian for the (s,s) part should be modified with the slacks instead of the identity matrix  <br /></td></tr>
<tr class="separator:a92c4364459781d9342cbf716f3d6a6ea"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a809f47f9d226e0d9ee4e093799df40c7" id="r_a809f47f9d226e0d9ee4e093799df40c7"><td class="memItemLeft" align="right" valign="top"><a class="el" href="namespaceIpopt.html#a5a4a27f325033a0e5d85a4ebc4038b57">Index</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1InexactPDSolver.html#a809f47f9d226e0d9ee4e093799df40c7">inexact_regularization_ls_count_trigger_</a></td></tr>
<tr class="memdesc:a809f47f9d226e0d9ee4e093799df40c7"><td class="mdescLeft">&#160;</td><td class="mdescRight">Threshold on line search evaluation count to trigger Hessian modification.  <br /></td></tr>
<tr class="separator:a809f47f9d226e0d9ee4e093799df40c7"><td class="memSeparator" colspan="2">&#160;</td></tr>
</table><table class="memberdecls">
<tr class="heading"><td colspan="2"><h2 class="groupheader"><a id="inherited" name="inherited"></a>
Additional Inherited Members</h2></td></tr>
<tr class="inherit_header pro_methods_classIpopt_1_1AlgorithmStrategyObject"><td colspan="2" onclick="javascript:toggleInherit('pro_methods_classIpopt_1_1AlgorithmStrategyObject')"><img src="closed.png" alt="-"/>&#160;Protected Member Functions inherited from <a class="el" href="classIpopt_1_1AlgorithmStrategyObject.html">Ipopt::AlgorithmStrategyObject</a></td></tr>
<tr class="memitem:ada99d79edf49ae7d487ad2c3b63b82af inherit pro_methods_classIpopt_1_1AlgorithmStrategyObject" id="r_ada99d79edf49ae7d487ad2c3b63b82af"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1Journalist.html">Journalist</a> &amp;&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1AlgorithmStrategyObject.html#ada99d79edf49ae7d487ad2c3b63b82af">Jnlst</a> () <a class="el" href="classIpopt_1_1DependentResult.html">const</a></td></tr>
<tr class="separator:ada99d79edf49ae7d487ad2c3b63b82af inherit pro_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:add7ef129a410b51b3db14a12dea1fd03 inherit pro_methods_classIpopt_1_1AlgorithmStrategyObject" id="r_add7ef129a410b51b3db14a12dea1fd03"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1IpoptNLP.html">IpoptNLP</a> &amp;&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1AlgorithmStrategyObject.html#add7ef129a410b51b3db14a12dea1fd03">IpNLP</a> () <a class="el" href="classIpopt_1_1DependentResult.html">const</a></td></tr>
<tr class="separator:add7ef129a410b51b3db14a12dea1fd03 inherit pro_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a097ab7f6103c3345324a257914fff29a inherit pro_methods_classIpopt_1_1AlgorithmStrategyObject" id="r_a097ab7f6103c3345324a257914fff29a"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1IpoptData.html">IpoptData</a> &amp;&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1AlgorithmStrategyObject.html#a097ab7f6103c3345324a257914fff29a">IpData</a> () <a class="el" href="classIpopt_1_1DependentResult.html">const</a></td></tr>
<tr class="separator:a097ab7f6103c3345324a257914fff29a inherit pro_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a9330e92f6c2fdabb9741d218d9c64f35 inherit pro_methods_classIpopt_1_1AlgorithmStrategyObject" id="r_a9330e92f6c2fdabb9741d218d9c64f35"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1IpoptCalculatedQuantities.html">IpoptCalculatedQuantities</a> &amp;&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1AlgorithmStrategyObject.html#a9330e92f6c2fdabb9741d218d9c64f35">IpCq</a> () <a class="el" href="classIpopt_1_1DependentResult.html">const</a></td></tr>
<tr class="separator:a9330e92f6c2fdabb9741d218d9c64f35 inherit pro_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
<tr class="memitem:a5f6310084b90871ee4eec3d89bb407ee inherit pro_methods_classIpopt_1_1AlgorithmStrategyObject" id="r_a5f6310084b90871ee4eec3d89bb407ee"><td class="memItemLeft" align="right" valign="top"><a class="el" href="classIpopt_1_1DependentResult.html">bool</a>&#160;</td><td class="memItemRight" valign="bottom"><a class="el" href="classIpopt_1_1AlgorithmStrategyObject.html#a5f6310084b90871ee4eec3d89bb407ee">HaveIpData</a> () <a class="el" href="classIpopt_1_1DependentResult.html">const</a></td></tr>
<tr class="separator:a5f6310084b90871ee4eec3d89bb407ee inherit pro_methods_classIpopt_1_1AlgorithmStrategyObject"><td class="memSeparator" colspan="2">&#160;</td></tr>
</table>
<a name="details" id="details"></a><h2 class="groupheader">Detailed Description</h2>
<div class="textblock"><p>This is the implementation of the Primal-Dual System, allowing the usage of an inexact linear solver. </p>
<p>The step computed is usually for the tangential step. </p>

<p class="definition">Definition at line <a class="el" href="IpInexactPDSolver_8hpp_source.html#l00023">23</a> of file <a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>.</p>
</div><h2 class="groupheader">Constructor &amp; Destructor Documentation</h2>
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<h2 class="memtitle"><span class="permalink"><a href="#a980c16e3eb901a74a0f7411bf96881c1">&#9670;&#160;</a></span>InexactPDSolver() <span class="overload">[1/2]</span></h2>

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          <td class="memname">Ipopt::InexactPDSolver::InexactPDSolver </td>
          <td>(</td>
          <td class="paramtype"><a class="el" href="classIpopt_1_1AugSystemSolver.html">AugSystemSolver</a> &amp;&#160;</td>
          <td class="paramname"><em>augSysSolver</em>, </td>
        </tr>
        <tr>
          <td class="paramkey"></td>
          <td></td>
          <td class="paramtype"><a class="el" href="classIpopt_1_1PDPerturbationHandler.html">PDPerturbationHandler</a> &amp;&#160;</td>
          <td class="paramname"><em>perturbHandler</em>&#160;</td>
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          <td></td>
          <td>)</td>
          <td></td><td></td>
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<p>Constructor that takes in the Augmented System solver that is to be used inside. </p>

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<h2 class="memtitle"><span class="permalink"><a href="#a753c130bc904eac4c4b4eefcefd83a93">&#9670;&#160;</a></span>~InexactPDSolver()</h2>

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          <td class="memname"><a class="el" href="classIpopt_1_1DependentResult.html">virtual</a> Ipopt::InexactPDSolver::~InexactPDSolver </td>
          <td>(</td>
          <td class="paramname"></td><td>)</td>
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<span class="mlabels"><span class="mlabel">virtual</span></span>  </td>
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<p>Destructor. </p>

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<h2 class="memtitle"><span class="permalink"><a href="#a09d510d5044ecf3fe7765ea18843e522">&#9670;&#160;</a></span>InexactPDSolver() <span class="overload">[2/2]</span></h2>

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          <td class="memname">Ipopt::InexactPDSolver::InexactPDSolver </td>
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<p>Default Constructor. </p>

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<h2 class="groupheader">Member Function Documentation</h2>
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<h2 class="memtitle"><span class="permalink"><a href="#aab927b8bd5688eee5c4780e38f706279">&#9670;&#160;</a></span>InitializeImpl()</h2>

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          <td class="memname"><a class="el" href="classIpopt_1_1DependentResult.html">bool</a> Ipopt::InexactPDSolver::InitializeImpl </td>
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          <td class="paramtype"><a class="el" href="classIpopt_1_1DependentResult.html">const</a> <a class="el" href="classIpopt_1_1OptionsList.html">OptionsList</a> &amp;&#160;</td>
          <td class="paramname"><em>options</em>, </td>
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<p>Implementation of the initialization method that has to be overloaded by for each derived class. </p>

<p>Implements <a class="el" href="classIpopt_1_1AlgorithmStrategyObject.html#a6e5ef59a257a61c928515ea78fd5c148">Ipopt::AlgorithmStrategyObject</a>.</p>

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<h2 class="memtitle"><span class="permalink"><a href="#add4de668e7e7d8917f81ba92252e3134">&#9670;&#160;</a></span>Solve()</h2>

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          <td class="memname"><a class="el" href="classIpopt_1_1DependentResult.html">virtual</a> <a class="el" href="classIpopt_1_1DependentResult.html">bool</a> Ipopt::InexactPDSolver::Solve </td>
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          <td class="paramname"><em>rhs</em>, </td>
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<p>Solve the primal dual system, given one right hand side. </p>

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<h2 class="memtitle"><span class="permalink"><a href="#a001f7c31ab64f3720b5aa930892507cf">&#9670;&#160;</a></span>RegisterOptions()</h2>

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          <td class="paramname"><em>roptions</em></td><td>)</td>
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<h2 class="memtitle"><span class="permalink"><a href="#ac9a0f0aabf150129cb7aa0641880cba0">&#9670;&#160;</a></span>operator=()</h2>

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<p>Overloaded Assignment Operator. </p>

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<h2 class="memtitle"><span class="permalink"><a href="#ae776113ed3edae4e50051e11fa0e78d1">&#9670;&#160;</a></span>InexData()</h2>

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<p>Method to easily access Inexact data. </p>

<p class="definition">Definition at line <a class="el" href="IpInexactPDSolver_8hpp_source.html#l00076">76</a> of file <a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>.</p>

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<h2 class="memtitle"><span class="permalink"><a href="#a5f93ac125f67b528f5664faf307408f7">&#9670;&#160;</a></span>InexCq()</h2>

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<p>Method to easily access Inexact calculated quantities. </p>

<p class="definition">Definition at line <a class="el" href="IpInexactPDSolver_8hpp_source.html#l00084">84</a> of file <a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>.</p>

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<h2 class="memtitle"><span class="permalink"><a href="#a892f92d55ad6f51bdd2b8951541bbb47">&#9670;&#160;</a></span>ComputeResiduals()</h2>

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<p>Internal function for computing the residual (resid) given the right hand side (rhs) and the solution of the system (res). </p>

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<h2 class="memtitle"><span class="permalink"><a href="#ac66db5a00432dd6b643e6e03f9a5b8d9">&#9670;&#160;</a></span>HessianRequiresChange()</h2>

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<p>Method for checking if the Hessian matrix has to be modified. </p>
<p>All required data is obtained from the Data objects, so those values have to be set before this is called. </p>

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<h2 class="groupheader">Member Data Documentation</h2>
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<h2 class="memtitle"><span class="permalink"><a href="#a45c73cfd1e23d39956916c1fddcf1df0">&#9670;&#160;</a></span>augSysSolver_</h2>

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<p>Pointer to the Solver for the augmented system. </p>

<p class="definition">Definition at line <a class="el" href="IpInexactPDSolver_8hpp_source.html#l00094">94</a> of file <a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>.</p>

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<h2 class="memtitle"><span class="permalink"><a href="#a4bd60eed77eed18bbbe5298a0fe86954">&#9670;&#160;</a></span>perturbHandler_</h2>

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<p>Pointer to the Perturbation Handler. </p>

<p class="definition">Definition at line <a class="el" href="IpInexactPDSolver_8hpp_source.html#l00096">96</a> of file <a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>.</p>

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<h2 class="memtitle"><span class="permalink"><a href="#a5714f058980c834fbe690a0d557b09fe">&#9670;&#160;</a></span>tcc_psi_</h2>

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<p>Psi factor in the tangential component condition. </p>

<p class="definition">Definition at line <a class="el" href="IpInexactPDSolver_8hpp_source.html#l00128">128</a> of file <a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>.</p>

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<h2 class="memtitle"><span class="permalink"><a href="#ac422d2cca798c88ce1760c68f6fb1987">&#9670;&#160;</a></span>tcc_theta_</h2>

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<p>theta factor in the tangential component condition </p>

<p class="definition">Definition at line <a class="el" href="IpInexactPDSolver_8hpp_source.html#l00130">130</a> of file <a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>.</p>

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<h2 class="memtitle"><span class="permalink"><a href="#af1fd55adee5028bd81b15de7f921c38c">&#9670;&#160;</a></span>tcc_theta_mu_exponent_</h2>

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<p>mu exponent when multiplied to theta in the tangential component condition </p>

<p class="definition">Definition at line <a class="el" href="IpInexactPDSolver_8hpp_source.html#l00133">133</a> of file <a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>.</p>

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<h2 class="memtitle"><span class="permalink"><a href="#a92c4364459781d9342cbf716f3d6a6ea">&#9670;&#160;</a></span>modify_hessian_with_slacks_</h2>

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<p>flag indicating if the Hessian for the (s,s) part should be modified with the slacks instead of the identity matrix </p>

<p class="definition">Definition at line <a class="el" href="IpInexactPDSolver_8hpp_source.html#l00137">137</a> of file <a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>.</p>

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<h2 class="memtitle"><span class="permalink"><a href="#a809f47f9d226e0d9ee4e093799df40c7">&#9670;&#160;</a></span>inexact_regularization_ls_count_trigger_</h2>

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<p>Threshold on line search evaluation count to trigger Hessian modification. </p>

<p class="definition">Definition at line <a class="el" href="IpInexactPDSolver_8hpp_source.html#l00141">141</a> of file <a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>.</p>

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<h2 class="memtitle"><span class="permalink"><a href="#a534a1a1bbd2f78dfbcec15fe642569c9">&#9670;&#160;</a></span>is_pardiso_</h2>

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<p>flag indicating if we are dealing with the Pardiso solver (temporary) </p>

<p class="definition">Definition at line <a class="el" href="IpInexactPDSolver_8hpp_source.html#l00147">147</a> of file <a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>.</p>

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<h2 class="memtitle"><span class="permalink"><a href="#abb525f91b087700b6f1ae79ae92a6394">&#9670;&#160;</a></span>last_info_ls_count_</h2>

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<p class="definition">Definition at line <a class="el" href="IpInexactPDSolver_8hpp_source.html#l00149">149</a> of file <a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a>.</p>

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<hr/>The documentation for this class was generated from the following file:<ul>
<li>src/Algorithm/Inexact/<a class="el" href="IpInexactPDSolver_8hpp_source.html">IpInexactPDSolver.hpp</a></li>
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